PubMed Health⌕ Search

Biomedical subjects

V Rodighiero

Publications and source records attributed to V Rodighiero.

7 recordsLinked to original sources

Effects of liver disease on pharmacokinetics. An update.

Liver disease can modify the kinetics of drugs biotransformed by the liver. This review updates recent developments in this field, with particular emphasis on cytochrome P450 (CYP). CYP is a rapidly expanding area in clinical pharmacology. The information currently available on specific isoforms involved in drug metabolism has increased tremendously over the latest years, but knowledge remains incomplete. Studies on the effects of liver disease on specific isoenzymes of CYP have shown that some isoforms are more susceptible than others to liver disease. A detailed knowledge of the particular isoenzyme involved in the metabolism of a drug and the impact of liver disease on that enzyme can provide a rational basis for dosage adjustment in patients with hepatic impairment. The capacity of the liver to metabolise drugs depends on hepatic blood flow and liver enzyme activity, both of which can be affected by liver disease. In addition, liver failure can influence the binding of a drug to plasma proteins. These changes can occur alone or in combination; when they coexist their effect on drug kinetics is synergistic, not simply additive. The kinetics of drugs with a low hepatic extraction are sensitive to hepatic failure rather than to liver blood flow changes, but drugs having a significant first-pass effect are sensitive to alterations in hepatic blood flow. The drugs examined in this review are: cardiovascular agents (angiotensin converting enzyme inhibitors, angiotensin II receptor antagonists, calcium antagonists, ketanserin, antiarrhythmics and hypolipidaemics), diuretics (torasemide), psychoactive and anticonvulsant agents (benzodiazepines, flumazenil, antidepressants and tiagabine), antiemetics (metoclopramide and serotonin antagonists), antiulcers (acid pump inhibitors), anti-infectives and antiretroviral agents (grepafloxacin, ornidazole, pefloxacin, stavudine and zidovudine), immunosuppressants (cyclosporin and tacrolimus), naltrexone, tolcapone and toremifene. According to the available data, the kinetics of many drugs are altered by liver disease to an extent that requires dosage adjustment; the problem is to quantify the required changes. Obviously, this requires the evaluation of the degree of hepatic impairment. At present there is no satisfactory test that gives a quantitative measure of liver function and its impairment. A critical evaluation of these methods is provided. Guidelines providing a rational basis for dosage adjustment are illustrated. Finally, it is important to consider that liver disease not only affects pharmacokinetics but also pharmacodynamics. This review also examines drugs with altered pharmacodynamics.

Animals↗

Effects of cardiovascular disease on pharmacokinetics.

The pathophysiologic changes occurring in cardiovascular disease can affect the kinetics of drugs in several different ways. The present review examines these modifications and the underlying mechanisms. The kinetics of specific agents, such as antiarrhythmic, antihypertensive, cardiotonic, and other drugs are considered, and the clinical implications are outlined. The clinician should be aware of these modifications, because they require an adjustment of the dosage regimen. A rational basis for a correct therapeutic choice can be provided by adequate knowledge of these modifications.

Adrenergic beta-Agonists↗

Therapeutic drug monitoring of cyclosporin. Practical applications and limitations.

Cyclosporin, a potent immunosuppressive agent used to prevent rejection of transplanted organs, has a narrow therapeutic range and various toxic effects, mostly concentration-dependent. The kinetics of this drug present a large intra- and interindividual variability due to many factors resulting in marked variations of blood cyclosporin concentrations, and in a poor correlation between administered dose and concentrations. The knowledge of cyclosporin peculiarities and of factors affecting blood concentrations can provide a rational basis for establishing an adequate therapy for the individual patient, in conjunction with other laboratory and clinical data. Cyclosporin monitoring is a method of evaluating whether the therapeutic choice is correct. Cyclosporin concentrations can be measured in blood, plasma and serum using radioimmunoassay or high performance liquid chromatography. Different results are obtained, depending on the technique and on biological fluids used. Cyclosporin measurement presents many problems and difficulties. There is a need for standardisation and for quality assessment programmes. The recent development of monoclonal antibodies may represent a significant advance for cyclosporin monitoring. The most important factors affecting blood concentrations are: type of transplant, bile deficit, gastrointestinal dysfunction, food, variations of lipoprotein concentrations, impairment of liver function, age, drug coadministration. Therapeutic drug monitoring should be undertaken on a regular basis after the initiation of therapy with cyclosporin. After discharge from the hospital the patient and the attending physician should be aware of the factors which may require changes in cyclosporin therapy.

Antibodies, Monoclonal↗

Verapamil-induced changes in digoxin kinetics in cirrhosis.

The influence of a single low dose of verapamil (80 mg) on the serum levels of digoxin (single dose of 0.5 mg) was studied in 6 patients with hepatic cirrhosis and in 6 healthy volunteer controls. In the cirrhotic patients verapamil increased the peak serum level and the total AUC of digoxin by 98% and 32%, respectively. There was an associated 23% decrease in the renal digoxin clearance. In normal subjects only marginal alterations in digoxin kinetics were observed following verapamil administration. The results indicate that cirrhosis magnifies the influence of verapamil on digoxin kinetics.

Adult↗

[Dynamics of the production of staphylococcal enterotoxin and thermonuclease in foods responsible for outbreaks of food poisoning].

The behaviour of staphylococcal growth, thermonuclease and enterotoxin production in foods responsible of different food poisoning outbreaks is described. The significance of thermonuclease estimation, as a simple laboratory test for evaluating the hygienic status of foods in different steps of their commercial life, is discussed.

Enterotoxins↗